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Junhwan Lee

Yonsei University · Engineering

About the Lab

Professor Junhwan Lee's research lab specializes in geotechnical engineering with a focus on the behavior of shallow and deep foundations in granular soils, particularly under working load conditions. The lab investigates the influence of groundwater level fluctuations, soil nonlinearity, and in situ testing methods—such as CPT and SPT—on settlement and bearing capacity predictions. Key research directions include the development of advanced numerical and experimental methods to reduce uncertainties in foundation design, with emphasis on pile-soil interaction, normalized bearing capacity relationships, and state-dependent nonlinear behavior of silty sands.

foundation engineeringgroundwater levelcone penetration testnonlinear soil behaviorpile group interaction

Research Overview

Papers
272
Total Citations
3,710
Papers (5y)
39
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
39total
2022
2023
2024
2025
2026
Citations per year (5y)
85total
20222023202420252026

Selected Papers

15
1
Article|1,060 citations·2015
Comparative Influences of Precipitation and River Stage on Groundwater Levels in Near-River Areas
Incheol Kim, Donggyu Park, Doohyun Kyung, Garam Kim, Sun-Bin Kim, Junhwan Lee
SJR Q1SustainabilityOA

The sustainable performance of foundations of various urban buildings and infrastructures is strongly affected by groundwater level (GWL), as GWL causes changes in the stress state within soil. In the present study, the components affecting GWL were investigated, focusing on the effects of precipitation and river stage. These components were analyzed using a six-year database established for hydrological and groundwater monitoring data. Five study regions for which daily measured precipitation,

Water Science and TechnologyEnvironmental Science
2
Article|90 citations·2021
Probabilistic tunnel collapse risk evaluation model using analytical hierarchy process (AHP) and Delphi survey technique
Jeongheum Kim, Chang-Yong Kim, Garam Kim, In‐Cheol Kim, Qaisar Abbas, Junhwan Lee
SJR Q1Tunnelling and Underground Space Technology
Safety, Risk, Reliability and QualityEngineering
3
Article|83 citations·2005
Estimation of Bearing Capacity of Circular Footings on Sands Based on Cone Penetration Test
Junhwan Lee, Rodrigo Salgado
SJR Q1Journal of Geotechnical and Geoenvironmental Engineering

In the present paper, the estimation of limit unit bearing capacity qbL of axially loaded circular footings on sands based on cone penetration test cone resistance qc is examined. There are significant uncertainties in the calculation of bearing capacity using the bearing capacity equation. The selection of the value of the soil friction angle ϕ and of the equation for Nγ accounts for much of the overall uncertainty. The approach proposed in this study can reduce the uncertainties associated wit

Safety, Risk, Reliability and QualityEngineering
4
Article|76 citations·2003
Estimation of Load Capacity of Pipe Piles in Sand Based on Cone Penetration Test Results
Junhwan Lee, Rodrigo Salgado, Kyuho Paik
SJR Q1Journal of Geotechnical and Geoenvironmental Engineering

Pipe piles can be classified as either closed- or open-ended piles. In the present paper, the load capacity of both closed- and open-ended piles is related to cone penetration resistance qc through an experimental program using calibration chamber model pile load tests and field pile load tests. A total of 36 calibration chamber pile load tests and two full-scale field pile load tests were analyzed. All the test piles were instrumented for separate measurement of each component of pile load capa

Civil and Structural EngineeringEngineering
5
Article|73 citations·2014
Estimation of load-sharing ratios for piled rafts in sands that includes interaction effects
Junhwan Lee, Daesung Park, Donggyu Park, Keunbo Park
SJR Q1Computers and Geotechnics
Civil and Structural EngineeringEngineering
6
Article|69 citations·2009
Estimation of bearing capacity for multiple footings in sand
Junhwan Lee, Jongwan Eun
SJR Q1Computers and Geotechnics
Civil and Structural EngineeringEngineering
7
Article|69 citations·2013
Assessment of K0 correlation to strength for granular materials
Junhwan Lee, Tae Sup Yun, Dongyeol Lee, Junghwoon Lee, Junghwoon Lee, Junghwoon Lee
SJR Q1SOILS AND FOUNDATIONS
Civil and Structural EngineeringEngineering
8
Article|60 citations·2014
Comparative Analysis of Various Interaction Effects for Piled Rafts in Sands Using Centrifuge Tests
Dongyu Park, Junhwan Lee
SJR Q1Journal of Geotechnical and Geoenvironmental EngineeringOA

In the current study, the load responses and interaction effects of piled rafts embedded in sands were investigated. A series of centrifuge load tests were conducted using different types of model foundations. Single piles, group piles, piled rafts, and unpiled rafts were adopted in the tests to analyze various interaction effects of piled rafts. The load-settlement curves of piled rafts were similar to those of group piles for the initial settlement range and became similar to those of rafts as

Civil and Structural EngineeringEngineering
9
Article|57 citations·2002
Estimation of Footing Settlement in Sand
Junhwan Lee, Rodrigo Salgado
SJR Q1International Journal of Geomechanics

The settlement of foundations under working load conditions is an important design consideration. Well‐designed foundations induce stress‐strain states in the soil that are neither in the linear elastic range nor in the range usually associated with perfect plasticity. Thus, in order to accurately predict working settlements, analyses that are more realistic than simple elastic analyses are required. The settlements of footings in sand are often estimated based on the results of in situ tests, p

Civil and Structural EngineeringEngineering
10
Article|54 citations·2004
Stiffness degradation and shear strength of silty sands
Junhwan Lee, Rodrigo Salgado, J. Antônio H. Carraro
SJR Q1Canadian Geotechnical Journal

Soils behave nonlinearly from very early loading stages. When granular soils contain a certain amount of fines, the degree of nonlinearity also changes, as stiffness and strength characteristics vary with fines content. Hyperbolic stress–strain models and variations of these models are often used for description of the nonlinear behavior. A modified hyperbolic stress–strain relationship is used in this paper for representing the degradation of the elastic modulus of silty sands. The model is bas

Civil and Structural EngineeringEngineering
11
Article|54 citations·2014
Analysis of load sharing behavior for piled rafts using normalized load response model
Junhwan Lee, Donggyu Park, Kyujin Choi
SJR Q1Computers and Geotechnics
Civil and Structural EngineeringEngineering
12
Article|54 citations·2019
Investigation of pullout load capacity for helical anchors subjected to inclined loading conditions using coupled Eulerian-Lagrangian analyses
Ochang Kwon, Jiyeong Lee, Garam Kim, In‐Cheol Kim, Junhwan Lee
SJR Q1Computers and Geotechnics
Civil and Structural EngineeringEngineering
13
Article|44 citations·2000
Analysis of calibration chamber plate load tests
Junhwan Lee, Rodrigo Salgado
SJR Q1Canadian Geotechnical Journal

The estimation of base resistance is a key step in the design of piles embedded in moderately dense to dense sand. Calibration chamber plate load tests are sometimes used to investigate the base load - settlement relationship of nondisplacement piles in sand. In such tests, the sand specimens are carefully prepared to simulate the installation of nondisplacement piles. In this paper, calibration chamber tests are analyzed using the finite element method; experimental and numerical results are co

Civil and Structural EngineeringEngineering
14
Article|39 citations·2008
Strain Influence Diagrams for Settlement Estimation of Both Isolated and Multiple Footings in Sand
Junhwan Lee, Jongwan Eun, Mônica Prezzi, Rodrigo Salgado
SJR Q1Journal of Geotechnical and Geoenvironmental Engineering

Most of the existing methods for estimating settlements of footings in sand have been developed for either isolated square footings or for strip footings. The literature contains limited information on settlement analysis of rectangular footings, and, as a result, there is no way to accurately account for the effect of the footing length-to-width ratio on settlement. Additionally, no practical method exists for considering the interaction between neighboring footings in settlement estimates. In

Civil and Structural EngineeringEngineering
15
Article|36 citations·2017
Interpretative Analysis of Lateral Load–Carrying Behavior and Design Model for Inclined Single and Group Micropiles
Doohyun Kyung, Junhwan Lee
SJR Q1Journal of Geotechnical and Geoenvironmental Engineering

In this study, the lateral load–carrying capacity of micropiles was investigated focusing on the effect of micropile inclination. A series of model load tests was conducted for both single (SMP) and group (GMP) micropiles with various configuration conditions of inclination angle, load direction, and micropile spacing. To clarify the load-carrying mechanism of inclined micropiles, a finite-element (FE) analysis was performed. The lateral load–carrying capacity of inclined SMPs increased with θ u

Civil and Structural EngineeringEngineering

Research Areas

Civil and Structural EngineeringElectrical and Electronic EngineeringSafety, Risk, Reliability and QualityAerospace EngineeringComputer Networks and CommunicationsMedia Technology

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